IP Library Granted Patent US 9,889,738
Granted Patent B1
US 9,889,738 · App. 15/674,131 · Granted Feb 13, 2018

Prime mover RPM limiting control

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Quick Facts
Patent No.
US 9,889,738
App. No.
15/674,131
Granted
Feb 13, 2018
Kind
B1
Abstract

A method for controlling the operation of a vehicle prime mover based on the engagement status of one or more safety restraints of the vehicle. In various implementations the method comprises monitoring, via a RPM controller of the vehicle, an operational status of vehicle, monitoring, via the RPM controller, the engagement status at least one passenger safety restraint of the vehicle, and limiting, via the RPM controller, a rotational speed, e.g., revolutions per minute (RPM) of one or more prime mover of the vehicle when the vehicle is in a On operational status and the at least one safety restraint is in a disengaged status.

Claims (37)

1. A vehicle prime mover RPM controller, said RPM controller structured to:

receive input from a vehicle operational status switch of a vehicle in which the controller is installed to determine an operational status of the vehicle;

receive input from at least one safety restraint sensor of the vehicle to determine an engagement status of at least one passenger safety restraint of the vehicle; and

output commands to limit a rotational speed of one or more prime mover of the vehicle when the vehicle is in an On operational status and the at least one safety restraint is in a disengaged status.

2. The prime mover RPM controller of claim 1 , wherein the prime mover RPM controller is further structured to output commands to a throttle of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover.

3. The prime mover RPM controller of claim 2 , wherein the prime mover RPM controller is further structured and operable to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover is limited regardless the inputs received from the accelerator pedal.

4. The prime mover RPM controller of claim 1 , wherein the prime mover RPM controller is further structured to output commands to a device structured and operable to control at least one of a current and a voltage supplied to at least one of the one or more prime mover to limit the rotational speed of respective prime mover.

5. The prime mover RPM of claim 4 , wherein the prime mover RPM controller is further structured to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover is limited regardless of the inputs received from the accelerator pedal.

6. The prime mover RPM of claim 1 , wherein the prime mover RPM controller is further structured to output commands to control an ignition timing of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover.

7. The prime mover RPM of claim 1 , wherein the prime mover RPM controller is further structured to determine a presence of a vehicle passenger in a seating structure of the vehicle, and to limit the rotational speed of the one or more prime mover of the vehicle by limiting the rotational speed of the one or more prime mover of the vehicle when at least one passenger is present in the seating structure.

8. A vehicle prime mover RPM controller, said RPM controller structured to:

receive input from a vehicle operational status switch of a vehicle in which the controller is installed to determine an operational status of the vehicle;

receive input from at least one safety restraint sensor of the vehicle to determine an engagement status of at least one passenger safety restraint of the vehicle; and

output commands to limit a rotational speed of one or more prime mover of the vehicle to a maximum threshold when the vehicle is in an On operational status and the at least one safety restraint is in a disengaged status.

9. The prime mover RPM controller of claim 8 , wherein the prime mover RPM controller is further structured to output commands to a throttle of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover to the maximum threshold.

10. The prime mover RPM controller of claim 9 , wherein the prime mover RPM controller is further structured and operable to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover does not exceed the maximum threshold regardless of the inputs received from an accelerator pedal.

11. The prime mover RPM controller of claim 8 , wherein the prime mover RPM controller is further structured to output commands to a device structured and operable to control at least one of a current and a voltage supplied to at least one of the one or more prime mover to limit the rotational speed of respective prime mover to the maximum threshold.

12. The prime mover RPM of claim 11 , wherein the prime mover RPM controller is further structured to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover does not exceed the maximum threshold regardless of the inputs received from an accelerator pedal.

13. The prime mover RPM of claim 8 , wherein the prime mover RPM controller is further structured to output commands to control an ignition timing of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover to the maximum threshold.

14. The prime mover RPM of claim 8 , wherein the prime mover RPM controller is further structured to determine a presence of a vehicle passenger in a seating structure of the vehicle, and to limit the rotational speed of the one or more prime mover of the vehicle by limiting the rotational speed of the one or more prime mover of the vehicle to the maximum threshold when at least one passenger is present in the seating structure.

15. An off-road utility vehicle, said vehicle comprising:

a plurality of wheels operationally connected to a chassis of the vehicle;

a passenger compartment supported by the chassis, the passenger compartment comprising:

a vehicle operational status switch structured and operable to control the operational status of the vehicle;

at least one seating structure structured and operable to support one or more vehicle passenger; and

a safety restraint device, each safety restraint device structured and operable to retain a respective vehicle passenger in a respective seating structure;

a drivetrain operationally connected to at least one of the wheels, the drivetrain comprising one or more prime mover structured and operable to generate torque deliverable to the at least one of the wheels; and

a prime mover RPM controller, the prime mover RPM controller structured and operable to:

receive input from the vehicle operational status switch of the vehicle to determine an operational status of the vehicle;

receive input from the safety restraint sensor of the vehicle to determine an engagement status of the at least one passenger safety restraint; and

output commands to one or more prime mover to limit a rotational speed of the one or more prime mover of the vehicle when the vehicle is in an On operational status and the safety restraint is in a disengaged status.

16. The vehicle of claim 15 , wherein the prime mover RPM controller is further structured and operable to output commands to a throttle of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover.

17. The vehicle of claim 16 , wherein the prime mover RPM controller is further structured and operable to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover is limited regardless of the inputs received from an accelerator pedal.

18. The vehicle of claim 15 , wherein the prime mover RPM controller is further structured and operable to output commands to a device structured and operable to control at least one of a current and a voltage supplied to at least one of the one or more prime mover to limit the rotational speed of the respective prime mover.

19. The vehicle of claim 18 , wherein the prime mover RPM controller is further structured and operable to override inputs received from an accelerator pedal of the vehicle so that the rotational speed of the one or more prime mover is limited regardless of the inputs received from an accelerator pedal.

20. The vehicle of claim 15 , wherein the prime mover RPM controller is further structured and operable to output commands to control an ignition timing of at least one of the one or more prime mover to limit the rotational speed of the respective prime mover.

21. The vehicle of claim 15 , wherein the prime mover RPM controller is further structured and operable to determine a presence of a vehicle passenger in a seating structure of the vehicle, and to limit the rotational speed of the one or more prime mover of the vehicle by limiting the rotational speed of the one or more prime mover of the vehicle when at least one passenger is present in the seating structure.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2018
From: TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 044856/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2017
From: REID, SHANE CHRISTOPHER; STOCKS, JOHN LAWRENCE; O'DONNELL, MATTHEW LAWRENCE
To: TEXTRON INC.
Reel/Frame 043305/0358 →